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(11) | EP 4 134 529 A1 |
(12) | EUROPEAN PATENT APPLICATION |
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(54) | BUFFER HEAT EXCHANGERS FOR HYDROGEN ENGINES |
(57) In accordance with at least one aspect of this disclosure, there is provided a heat
exchange system (200). The heat exchange system (200) includes a first heat exchanger
(214) and a second heat exchanger (208). The first heat exchanger (214) includes an
engine fluid conduit (214a) fluidly connecting an engine fluid inlet (250a) to an
engine fluid outlet (250b). A first internal buffer fluid conduit (220) fluidly connects
a first buffer fluid inlet (252a) to a first buffer fluid outlet (252b) where the
engine fluid conduit (214a) is in fluid isolation from the first internal buffer fluid
conduit (220) but is in thermal communication with the first internal buffer fluid
conduit (220) for heat exchange between the engine fluid and the buffer fluid.
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TECHNICAL FIELD
BACKGROUND
SUMMARY
BRIEF DESCRIPTION OF THE DRAWINGS
Fig 1. is a schematic view of a heat exchange system in accordance with the present disclosure, showing a plurality of engine fluids exchanging heat with hydrogen fluid through a buffer fluid;
Fig. 2 is a schematic view of another configuration of the heat exchange system of Fig. 2;
Fig. 3 is a schematic view of another configuration of the heat exchange system of Fig. 2;
Fig. 4 is a schematic view of another configuration of the heat exchange system of Fig. 2; and
Fig. 5 is a schematic view of another configuration of the heat exchange system of Fig. 2.
DETAILED DESCRIPTION
Clause 1. A heat exchange system (200) for an aircraft engine (100) comprising:
a first heat exchanger (214) comprising:
an engine fluid conduit (214a) fluidly connecting an engine fluid inlet (250a) to an engine fluid outlet (250b); and
a first internal buffer fluid conduit (220) fluidly connecting a first buffer fluid inlet (252a) to a first buffer fluid outlet (252b),
wherein the engine fluid conduit is in fluid isolation from the first internal buffer fluid conduit, and wherein the engine fluid conduit is in thermal communication with the first internal buffer fluid conduit for heat exchange between the engine fluid conduit and the first internal buffer fluid conduit;
a second heat exchanger (208) comprising:
a hydrogen fluid conduit (208a) fluidly connecting a hydrogen fluid inlet (254a) to a hydrogen fluid outlet (254b); and
a second internal buffer fluid conduit (222) fluidly connecting a second buffer fluid inlet (256a) to a second buffer fluid outlet (256b),
wherein the hydrogen fluid conduit is in fluid isolation from the second internal buffer fluid conduit, and wherein the hydrogen fluid conduit is in thermal communication with the second internal buffer fluid conduit for heat exchange between the hydrogen fluid conduit and the second internal buffer fluid conduit;
a first external buffer fluid conduit (224) fluidly connecting the first buffer fluid outlet to the second buffer fluid inlet for flow of buffer fluid out of the first heat exchanger into the second heat exchanger; and
a second external buffer fluid conduit (226) fluidly connecting the second buffer fluid outlet to the first buffer fluid inlet for flow of buffer fluid out of the second heat exchanger and into the first heat exchanger.
Clause 2. The system as recited in clause 1, wherein the engine fluid is a first engine fluid, wherein the second heat exchanger is disposed in a main external hydrogen fluid conduit (102), wherein the hydrogen fluid conduit is a first internal hydrogen fluid conduit, the hydrogen fluid inlet is a first hydrogen fluid inlet, and the hydrogen fluid outlet is a first hydrogen fluid outlet, further comprising:
a third heat exchanger (216) comprising:
a second engine fluid conduit (216a) fluidly connecting a second engine fluid inlet (258a) to a second engine fluid outlet (258b); and
a third internal buffer fluid conduit (228) fluidly connecting a third buffer fluid inlet (260a) to a third buffer fluid outlet (260b),
wherein the second engine fluid conduit is in fluid isolation from the third internal buffer fluid conduit, and wherein the second engine fluid conduit is in thermal communication with the third internal buffer fluid conduit for heat exchange between the second engine fluid conduit and the third internal buffer fluid conduit;
a fourth heat exchanger (210) comprising:
a second internal hydrogen fluid conduit (210a) fluidly connecting a second hydrogen fluid inlet (262a) to a second hydrogen fluid outlet (262b); and
a fourth internal buffer fluid conduit (230) fluidly connecting a fourth buffer fluid inlet (264a) to a fourth buffer fluid outlet (264b),
wherein the second internal hydrogen fluid conduit is in fluid isolation from the fourth internal buffer fluid conduit, and wherein the second internal hydrogen fluid conduit is in thermal communication with the fourth internal buffer fluid conduit for heat exchange between the second internal hydrogen fluid conduit and the fourth internal buffer fluid conduit;
a third external buffer fluid conduit (232) fluidly connecting the third buffer fluid outlet to the fourth buffer fluid inlet for flow of buffer fluid out of the third heat exchanger into the fourth heat exchanger; and
a fourth external buffer fluid conduit (234) fluidly connecting the fourth buffer fluid outlet to the third buffer fluid inlet for flow of buffer fluid out of the fourth heat exchanger and into the third heat exchanger.
Clause 3. The system as recited in clause 2, further comprising:
a fifth heat exchanger (218) comprising:
a third engine fluid conduit (218a) fluidly connecting a third engine fluid inlet (266a) to a third engine fluid outlet (266b); and
a fifth internal fluid buffer conduit (236) fluidly connecting a fifth buffer fluid inlet (268a) to a fifth buffer fluid outlet (268b),
wherein the third engine fluid conduit is in fluid isolation from the fifth internal buffer fluid conduit, and wherein the third engine fluid conduit is in thermal communication with the fifth internal buffer fluid conduit for heat exchange between the third engine fluid conduit and the fifth internal buffer fluid conduit;
a sixth heat exchanger (212) comprising:
a third internal hydrogen fluid conduit (212a) fluidly connecting a third hydrogen fluid inlet (270a) to a third hydrogen fluid outlet (270b); and
a sixth internal buffer fluid conduit (238) fluidly connecting a sixth buffer fluid inlet (272a) to a sixth buffer fluid outlet (272b),
wherein the third internal hydrogen fluid conduit is in fluid isolation from the sixth internal buffer fluid conduit, and wherein the third internal hydrogen fluid conduit is in thermal communication with the sixth internal buffer fluid conduit for heat exchange between the third internal hydrogen fluid conduit and the sixth internal buffer fluid conduit;
a fifth external buffer fluid conduit (240) fluidly connecting the fifth buffer fluid outlet to the sixth buffer fluid inlet for flow of buffer fluid out of the fifth heat exchanger into the sixth heat exchanger; and
a sixth external buffer fluid conduit fluidly connecting the sixth buffer fluid outlet to the fifth buffer fluid inlet for flow of buffer fluid out of the sixth heat exchanger and into the fifth heat exchanger.
Clause 4. The system as recited in clause 4, wherein the first engine fluid is engine oil, the second engine fluid is engine compressor bleed air, and the third engine fluid is engine turbine exhaust.
Clause 5. The system as recited in clause 4, wherein the hydrogen fluid is liquid hydrogen, and further comprising a liquid hydrogen source (104), wherein the liquid hydrogen source is fluidly connected to a combustor via each of the first, second, and third hydrogen fluid conduits.
Clause 6. The system as recited in clause 1, wherein the engine fluid is a first engine fluid, wherein the second buffer fluid conduit is a through channel;
wherein the first heat exchanger (414) further includes:
a second engine fluid conduit (416a) fluidly connecting a second engine fluid inlet (258a) to a second engine fluid outlet (258b); and
wherein the second engine fluid conduit is in fluid isolation from the first internal buffer fluid conduit and the first engine fluid conduit, and wherein the second engine fluid conduit is in thermal communication with the first internal buffer fluid conduit and the first engine fluid conduit for heat exchange between the second engine fluid conduit, the first engine fluid conduit, and the first internal buffer fluid conduit, and further comprising:
a third heat exchanger (218) comprising:
a third engine fluid conduit (218a) fluidly connecting a third engine fluid inlet (266a) to a third engine fluid outlet (266b); and
a third internal fluid buffer conduit (228) fluidly connecting a third buffer fluid inlet (260a) to a third buffer fluid outlet (260b),
wherein the third engine fluid conduit is in fluid isolation from the third internal buffer fluid conduit, and wherein the third engine fluid conduit is in thermal communication with the third internal buffer fluid conduit for heat exchange between the third engine fluid conduit and the third internal buffer fluid conduit,
wherein the first external buffer fluid conduit fluidly connects the first buffer fluid outlet to the third buffer fluid inlet through the second buffer fluid conduit for flow of buffer fluid out of the first heat exchanger, through the second heat exchanger, and into the third heat exchanger;
wherein the second external buffer fluid conduit fluidly connects the third buffer fluid outlet to the first buffer fluid inlet for flow of buffer fluid out of the third heat exchanger, through the second heat exchanger, and into the first heat exchanger.
Clause 7. The system as recited in clause 1, wherein the engine fluid is a first engine fluid,
wherein the first heat exchanger (214) further includes:
a second engine fluid conduit (516a) fluidly connecting a second engine fluid inlet (258a) to a second engine fluid outlet (258b),
wherein the second engine fluid conduit is in fluid isolation from the first internal buffer fluid conduit and the first engine fluid conduit, and wherein the second engine fluid conduit is in thermal communication with the first internal buffer fluid conduit and the first engine fluid conduit for heat exchange between the second engine fluid conduit, the first engine fluid conduit, and the first internal buffer fluid conduit;
wherein the second heat exchanger further includes:
a third internal buffer fluid conduit (228) fluidly connecting a third buffer fluid
inlet (260a) to a third buffer fluid outlet (260b), wherein the hydrogen fluid conduit
is in fluid isolation from the third internal buffer fluid conduit, and wherein the
hydrogen fluid conduit is in thermal communication with the third internal buffer
fluid conduit for heat exchange between the hydrogen fluid conduit and the buffer
fluid conduit, and further comprising:
a third heat exchanger (218) comprising:
a third engine fluid conduit (218a) fluidly connecting a third engine fluid inlet (266a) to a third engine fluid outlet (266b); and
a fourth internal buffer fluid conduit (230) fluidly connecting a fourth buffer fluid inlet (264a) to a fourth buffer fluid outlet (264b),
wherein the third engine fluid conduit is in fluid isolation from the fourth internal buffer fluid conduit, and wherein the second engine fluid conduit is in thermal communication with the fourth internal buffer fluid conduit for heat exchange between the second engine fluid conduit and the fourth internal buffer fluid conduit;
a third external buffer fluid conduit (232) fluidly connecting the third buffer fluid outlet to the fourth buffer fluid inlet for flow of buffer fluid out of the second heat exchanger into the third heat exchanger; and
a fourth external buffer fluid conduit (234) fluidly connecting the fourth buffer fluid outlet to the third buffer fluid inlet for flow of buffer fluid out of the third heat exchanger and into the second heat exchanger.
Clause 8. The system as recited in clause 7, wherein the second heat exchanger is disposed in a main external hydrogen fluid conduit (104), wherein the hydrogen fluid conduit is a first internal hydrogen fluid conduit, the hydrogen fluid inlet is a first hydrogen fluid inlet, and the hydrogen fluid out-let is a first hydrogen fluid outlet, and further comprising:
a fourth heat exchanger comprising (216):
a third engine fluid conduit (216a) fluidly connecting a third engine fluid inlet (258a) to a third engine fluid outlet (258b); and
a fifth internal buffer fluid conduit (228) fluidly connecting a fifth buffer fluid inlet (260a) to a fifth buffer fluid outlet (260b),
wherein the third engine fluid conduit is in fluid isolation from the fifth internal buffer fluid conduit, and wherein the third engine fluid conduit is in thermal communication with the fifth internal buffer fluid conduit for heat exchange between the third engine fluid conduit and the fifth internal buffer fluid; and
a fifth heat exchanger (610) disposed in the main external hydrogen fluid conduit comprising:
a second internal hydrogen fluid conduit (210a) fluidly connecting a second hydrogen fluid outlet (262a) to a second hydrogen fluid outlet (262b), wherein the main external hydrogen fluid conduit connects the first hydrogen inlet to the second hydrogen inlet through first internal hydrogen conduit of the second heat exchanger and the second hydrogen outlet of the fifth heat exchanger; and
a sixth internal buffer fluid conduit (230) fluidly connecting a sixth buffer fluid inlet (264a) to a sixth buffer fluid outlet (264b),
wherein the second internal hydrogen fluid conduit is in fluid isolation from the sixth internal buffer fluid conduit, and wherein the second internal hydrogen fluid conduit is in thermal communication with the sixth internal buffer fluid conduit for heat exchange between the second internal hydrogen fluid conduit and the sixth internal buffer fluid conduit;
a fifth external buffer fluid conduit (232) fluidly connecting the fifth buffer fluid outlet to the sixth buffer fluid inlet for flow of buffer fluid out of the fifth heat exchanger into the sixth heat exchanger; and
a sixth external buffer fluid conduit (234) fluidly connecting the sixth buffer fluid outlet to the fifth buffer fluid inlet for flow of buffer fluid out of the sixth heat exchanger and into the fifth heat exchanger.
Clause 9. The system as recited in clause 7, further comprising:
a fourth heat exchanger (216) comprising:
a third engine fluid conduit (216a) fluidly connecting a third engine fluid inlet to a third engine fluid outlet; and
a fifth internal buffer fluid conduit (228) fluidly connecting a fifth buffer fluid inlet (260a) to a fifth buffer fluid outlet (260b),
wherein the third engine fluid conduit is in fluid isolation from the fifth internal buffer fluid conduit, and wherein the third engine fluid conduit is in thermal communication with the fifth internal buffer fluid conduit for heat exchange between the third engine fluid conduit and the fifth internal buffer fluid conduit;
the second heat exchanger further comprising:
a sixth internal buffer fluid conduit (330) fluidly connecting a sixth buffer fluid inlet (364a) to a sixth buffer fluid outlet (364b);,
wherein the hydrogen fluid conduit is in fluid isolation from the sixth internal buffer fluid conduit, and wherein the hydrogen fluid conduit is in thermal communication with the sixth buffer fluid conduit for heat exchange between hydrogen fluid conduit and the sixth internal buffer fluid conduit;
a fifth external buffer fluid conduit (232) fluidly connecting the fifth buffer fluid outlet to the sixth buffer fluid inlet for flow of buffer fluid out of the fifth heat exchanger into the second heat exchanger; and
a sixth external buffer fluid conduit (234) fluidly connecting the sixth buffer fluid outlet to the fifth buffer fluid inlet for flow of buffer fluid out of the second heat exchanger and into the fifth heat exchanger.
Clause 10. An aircraft (1), comprising
a gas turbine engine (100) including:
engine oil system (114);
a compressor (116);
a combustor fluidly connected to an outlet of the compressor; and
a turbine section (116) fluidly connected to an outlet of the combustor; and
the heat exchange system of any one of clauses 1-9, wherein the first heat exchanger is fluidly connected to the engine oil system.
Clause 11. The system as recited in clause 10, wherein the third heat exchanger is fluidly connected to the compressor.
Clause 12. The system as recited in clause 11, wherein the fifth heat exchanger is fluidly connected to the turbine section, wherein each of the first, third, and fifth heat exchangers are fluidly connected to at least one additional respective engine component for flow from the first, third, and fifth heat exchangers to the respective engine component.
Clause 13. The system as recited in clause 1, wherein the buffer fluid is a non-flammable fluid.
Clause 14. The system as recited in clause 13, wherein the buffer fluid has zero water content.
Clause 15. A method for exchanging heat between hydrogen and an engine fluid; comprising:
flowing an engine fluid through an engine fluid conduit (214a) of a first heat exchanger (214);
flowing hydrogen through a hydrogen conduit (208a) of a second heat exchanger (208); and
flowing a buffer fluid through a first buffer fluid conduit (220) of the first heat exchanger and a second buffer fluid conduit (222) of the second heat exchanger, wherein the engine fluid conduit and the first buffer fluid conduit are fluidly isolated, wherein the hydrogen conduit and the second buffer fluid conduit are fluidly isolated;
exchanging heat between the first engine fluid conduit and the first buffer fluid conduit; and
exchanging heat between the second buffer fluid conduit and the hydrogen conduit.
Clause 16. The method as recited in clause 15, wherein the engine fluid is a first engine fluid, wherein the engine fluid conduit is a first engine fluid conduit, and further comprising:
flowing a second engine fluid through a second engine fluid conduit (218a) of a third heat exchanger (218);
flowing the buffer fluid through a third buffer fluid conduit (236) in the third heat exchanger and the second buffer fluid conduit of the second heat exchanger; and
exchanging heat between the second engine fluid conduit and the third buffer fluid conduit.
Clause 17. The method as recited in clause 15, wherein the engine fluid is a first engine fluid, wherein the engine fluid conduit is a first engine fluid conduit, and further comprising:
flowing a second engine fluid through a second engine conduit (416a) of the first heat exchanger (414), wherein the second engine fluid conduit, the first engine fluid conduit, and the first buffer fluid conduit are fluidly isolated; and
exchanging heat between the second engine fluid conduit and the first buffer fluid conduit.
Clause 18. The system as recited in clause 15, wherein the first engine fluid is engine oil, the second engine fluid is engine compressor bleed air, and the third engine fluid is engine turbine exhaust.
Clause 19. The system as recited in clause 15, wherein the buffer fluid is a non-flammable fluid.
Clause 20. The system as recited in clause 19, wherein the buffer fluid has zero water content.
a first heat exchanger (214) comprising:
an engine fluid conduit (214a) fluidly connecting an engine fluid inlet (250a) to an engine fluid outlet (250b); and
a first internal buffer fluid conduit (220) fluidly connecting a first buffer fluid inlet (252a) to a first buffer fluid outlet (252b),
wherein the engine fluid conduit (214a) is in fluid isolation from the first internal buffer fluid conduit (220), and wherein the engine fluid conduit (214a) is in thermal communication with the first internal buffer fluid conduit (220) for heat exchange between the engine fluid conduit (214a) and the first internal buffer fluid conduit (220);
a second heat exchanger (208) comprising:
a hydrogen fluid conduit (208a) fluidly connecting a hydrogen fluid inlet (254a) to a hydrogen fluid outlet (254b); and
a second internal buffer fluid conduit (222) fluidly connecting a second buffer fluid inlet (256a) to a second buffer fluid outlet (256b),
wherein the hydrogen fluid conduit (208a) is in fluid isolation from the second internal buffer fluid conduit (222), and wherein the hydrogen fluid conduit (208a) is in thermal communication with the second internal buffer fluid conduit (222) for heat exchange between the hydrogen fluid conduit (208a) and the second internal buffer fluid conduit (222);
a first external buffer fluid conduit (224) fluidly connecting the first buffer fluid outlet (252b) to the second buffer fluid inlet (256a) for flow of buffer fluid out of the first heat exchanger (214) into the second heat exchanger (208); and
a second external buffer fluid conduit (226) fluidly connecting the second buffer fluid outlet (256b) to the first buffer fluid inlet (252a) for flow of buffer fluid out of the second heat exchanger (208) and into the first heat exchanger (214).
a third heat exchanger (216) comprising:
a second engine fluid conduit (216a) fluidly connecting a second engine fluid inlet (258a) to a second engine fluid outlet (258b); and
a third internal buffer fluid conduit (228) fluidly connecting a third buffer fluid inlet (260a) to a third buffer fluid outlet (260b),
wherein the second engine fluid conduit (216a) is in fluid isolation from the third internal buffer fluid conduit (228), and wherein the second engine fluid conduit (216a) is in thermal communication with the third internal buffer fluid conduit (228) for heat exchange between the second engine fluid conduit (216a) and the third internal buffer fluid conduit (228);
a fourth heat exchanger (210) comprising:
a second internal hydrogen fluid conduit (210a) fluidly connecting a second hydrogen fluid inlet (262a) to a second hydrogen fluid outlet (262b); and
a fourth internal buffer fluid conduit (230) fluidly connecting a fourth buffer fluid inlet (264a) to a fourth buffer fluid outlet (264b),
wherein the second internal hydrogen fluid conduit (210a) is in fluid isolation from the fourth internal buffer fluid conduit (230), and wherein the second internal hydrogen fluid conduit (210a) is in thermal communication with the fourth internal buffer fluid conduit (230) for heat exchange between the second internal hydrogen fluid conduit (210a) and the fourth internal buffer fluid conduit (230);
a third external buffer fluid conduit (232) fluidly connecting the third buffer fluid outlet (260b) to the fourth buffer fluid inlet (264a) for flow of buffer fluid out of the third heat exchanger (216) into the fourth heat exchanger (210); and
a fourth external buffer fluid conduit (234) fluidly connecting the fourth buffer fluid outlet (264b) to the third buffer fluid inlet (260a) for flow of buffer fluid out of the fourth heat exchanger (210) and into the third heat exchanger (216).
a fifth heat exchanger (218) comprising:
a third engine fluid conduit (218a) fluidly connecting a third engine fluid inlet (266a) to a third engine fluid outlet (266b); and
a fifth internal fluid buffer conduit (236) fluidly connecting a fifth buffer fluid inlet (268a) to a fifth buffer fluid outlet (268b),
wherein the third engine fluid conduit (218a) is in fluid isolation from the fifth internal buffer fluid conduit (236), and wherein the third engine fluid conduit (218a) is in thermal communication with the fifth internal buffer fluid conduit (236) for heat exchange between the third engine fluid conduit (218a) and the fifth internal buffer fluid conduit (236);
a sixth heat exchanger (212) comprising:
a third internal hydrogen fluid conduit (212a) fluidly connecting a third hydrogen fluid inlet (270a) to a third hydrogen fluid outlet (270b); and
a sixth internal buffer fluid conduit (238) fluidly connecting a sixth buffer fluid inlet (272a) to a sixth buffer fluid outlet (272b),
wherein the third internal hydrogen fluid conduit (212a) is in fluid isolation from the sixth internal buffer fluid conduit (238), and wherein the third internal hydrogen fluid conduit (212a) is in thermal communication with the sixth internal buffer fluid conduit (238) for heat exchange between the third internal hydrogen fluid conduit (212a) and the sixth internal buffer fluid conduit (238);
a fifth external buffer fluid conduit (240) fluidly connecting the fifth buffer fluid outlet (268b) to the sixth buffer fluid inlet (272a) for flow of buffer fluid out of the fifth heat exchanger (218) into the sixth heat exchanger (212); and
a sixth external buffer fluid conduit (242) fluidly connecting the sixth buffer fluid outlet (272b) to the fifth buffer fluid inlet (268a) for flow of buffer fluid out of the sixth heat exchanger (212) and into the fifth heat exchanger (218).
wherein the first heat exchanger (414) further includes:
a second engine fluid conduit (416a) fluidly connecting a second engine fluid inlet
(258a) to a second engine fluid outlet (258b); and
wherein the second engine fluid conduit (416a) is in fluid isolation from the first
internal buffer fluid conduit (220) and the first engine fluid conduit (214a), and
wherein the second engine fluid conduit (416a) is in thermal communication with the
first internal buffer fluid conduit (220) and the first engine fluid conduit (214a)
for heat exchange between the second engine fluid conduit (416a), the first engine
fluid conduit (214a), and the first internal buffer fluid conduit (220), and further
comprising:
a third heat exchanger (218) comprising:
a third engine fluid conduit (218a) fluidly connecting a third engine fluid inlet (266a) to a third engine fluid outlet (266b); and
a third internal fluid buffer conduit (228) fluidly connecting a third buffer fluid inlet (260a) to a third buffer fluid outlet (260b),
wherein the third engine fluid conduit (218a) is in fluid isolation from the third internal buffer fluid conduit (228), and wherein the third engine fluid conduit (218a) is in thermal communication with the third internal buffer fluid conduit (228) for heat exchange between the third engine fluid conduit (218a) and the third internal buffer fluid conduit (228),
wherein the first external buffer fluid conduit (224) fluidly connects the first buffer fluid outlet (252b) to the third buffer fluid inlet (260a) through the second buffer fluid conduit (222) for flow of buffer fluid out of the first heat exchanger (214), through the second heat exchanger (208), and into the third heat exchanger (218);
wherein the second external buffer fluid conduit (226) fluidly connects the third buffer fluid outlet (260b) to the first buffer fluid inlet (252a) for flow of buffer fluid out of the third heat exchanger (218), through the second heat exchanger (208), and into the first heat exchanger (214).
wherein the first heat exchanger (214) further includes:
a second engine fluid conduit (516a) fluidly connecting a second engine fluid inlet (258) to a second engine fluid outlet (258b),
wherein the second engine fluid conduit (516a) is in fluid isolation from the first internal buffer fluid conduit (220) and the first engine fluid conduit (214a), and wherein the second engine fluid conduit (516a) is in thermal communication with the first internal buffer fluid conduit (220) and the first engine fluid conduit (214a) for heat exchange between the second engine fluid conduit (516a), the first engine fluid conduit (214a), and the first internal buffer fluid conduit (220);
wherein the second heat exchanger (208) further includes:
a third internal buffer fluid conduit (228) fluidly connecting a third buffer fluid
inlet (260a) to a third buffer fluid outlet (260b), wherein the hydrogen fluid conduit
(208a) is in fluid isolation from the third internal buffer fluid conduit (228), and
wherein the hydrogen fluid conduit (208a) is in thermal communication with the third
internal buffer fluid conduit (228) for heat exchange between the hydrogen fluid conduit
(208a) and the third internal buffer fluid conduit (228), and further comprising:
a third heat exchanger (218) comprising:
a third engine fluid conduit (218a) fluidly connecting a third engine fluid inlet (266a) to a third engine fluid outlet (266b); and
a fourth internal buffer fluid conduit (230) fluidly connecting a fourth buffer fluid inlet (264a) to a fourth buffer fluid outlet (264b),
wherein the third engine fluid conduit (218a) is in fluid isolation from the fourth internal buffer fluid conduit (230), and wherein the second engine fluid conduit (516a) is in thermal communication with the fourth internal buffer fluid conduit (230) for heat exchange between the second engine fluid conduit (516a) and the fourth internal buffer fluid conduit (230);
a third external buffer fluid conduit (232) fluidly connecting the third buffer fluid outlet (260b) to the fourth buffer fluid inlet (264a) for flow of buffer fluid out of the second heat exchanger (208) into the third heat exchanger (218); and
a fourth external buffer fluid conduit (234) fluidly connecting the fourth buffer fluid outlet (264b) to the third buffer fluid inlet (260a) for flow of buffer fluid out of the third heat exchanger (218) and into the second heat exchanger (208).
a fourth heat exchanger (216) comprising:
a third engine fluid conduit (216a) fluidly connecting a third engine fluid inlet (258a) to a third engine fluid outlet (258b); and
a fifth internal buffer fluid conduit (228) fluidly connecting a fifth buffer fluid inlet (260a) to a fifth buffer fluid outlet (260b),
wherein the third engine fluid conduit (216a) is in fluid isolation from the fifth internal buffer fluid conduit (228), and wherein the third engine fluid conduit (216a) is in thermal communication with the fifth internal buffer fluid conduit (228) for heat exchange between the third engine fluid conduit (216a) and the fifth internal buffer fluid conduit (228); and
a fifth heat exchanger (610) disposed in the main external hydrogen fluid conduit (104) comprising:
a second internal hydrogen fluid conduit (210a) fluidly connecting a second hydrogen fluid inlet (262a) to a second hydrogen fluid outlet (262b), wherein the main external hydrogen fluid conduit (104) connects the first hydrogen inlet (254a) to the second hydrogen inlet (262a) through first internal hydrogen conduit (208a) of the second heat exchanger (208) and the second hydrogen outlet (262b) of the fifth heat exchanger (610); and
a sixth internal buffer fluid conduit (230) fluidly connecting a sixth buffer fluid inlet (264a) to a sixth buffer fluid outlet (264b),
wherein the second internal hydrogen fluid conduit (210a) is in fluid isolation from the sixth internal buffer fluid conduit (230), and wherein the second internal hydrogen fluid conduit (210a) is in thermal communication with the sixth internal buffer fluid conduit (230) for heat exchange between the second internal hydrogen fluid conduit (210a) and the sixth internal buffer fluid conduit (230);
a fifth external buffer fluid conduit (232) fluidly connecting the fifth buffer fluid outlet (260b) to the sixth buffer fluid inlet (264a) for flow of buffer fluid out of the fifth heat exchanger (610) into a or the sixth heat exchanger (212); and
a sixth external buffer fluid conduit (234) fluidly connecting the sixth buffer fluid outlet (264b) to the fifth buffer fluid inlet (260a) for flow of buffer fluid out of the sixth heat exchanger (212) and into the fifth heat exchanger (610).
a fourth heat exchanger (216) comprising:
a third engine fluid conduit (216a) fluidly connecting a third engine fluid inlet (266a) to a third engine fluid outlet (266b); and
a fifth internal buffer fluid conduit (228) fluidly connecting a fifth buffer fluid inlet (260a) to a fifth buffer fluid outlet (260b),
wherein the third engine fluid conduit (216a) is in fluid isolation from the fifth internal buffer fluid conduit (228), and wherein the third engine fluid conduit (216a) is in thermal communication with the fifth internal buffer fluid conduit (228) for heat exchange between the third engine fluid conduit (216a) and the fifth internal buffer fluid conduit (228);
the second heat exchanger (208) further comprising:
a sixth internal buffer fluid conduit (300) fluidly connecting a sixth buffer fluid
inlet (364a) to a sixth buffer fluid outlet (364b),
wherein the hydrogen fluid conduit (208a) is in fluid isolation from the sixth internal buffer fluid conduit (300), and wherein the hydrogen fluid conduit (208a) is in thermal communication with the sixth buffer fluid conduit (300) for heat exchange between the hydrogen fluid conduit (208a) and the sixth internal buffer fluid conduit (300);
a fifth external buffer fluid conduit (232) fluidly connecting the fifth buffer fluid outlet (260b) to the sixth buffer fluid inlet (364a) for flow of buffer fluid out of the fifth heat exchanger (610) into the second heat exchanger (208); and
a sixth external buffer fluid conduit (234) fluidly connecting the sixth buffer fluid outlet (364b) to the fifth buffer fluid inlet (260a) for flow of buffer fluid out of the second heat exchanger (208) and into the fifth heat exchanger (610).
a gas turbine engine (100) including:
engine oil system (114);
a compressor (116);
a combustor fluidly connected to an outlet of the compressor (116); and
a turbine section (118) fluidly connected to an outlet of the combustor; and
the heat exchange system (200) of any preceding claim, wherein the first heat exchanger (214) is fluidly connected to the engine oil system (114),
wherein a or the third heat exchanger (216) is optionally fluidly connected to the compressor (116).
flowing an engine fluid through an engine fluid conduit (214a) of a first heat exchanger (214);
flowing hydrogen through a hydrogen conduit (208a) of a second heat exchanger (208); and
flowing a buffer fluid through a first buffer fluid conduit (220) of the first heat exchanger (214) and a second buffer fluid conduit (222) of the second heat exchanger (208), wherein the engine fluid conduit (214a) and the first buffer fluid conduit (220) are fluidly isolated, wherein the hydrogen conduit (208a) and the second buffer fluid conduit (222) are fluidly isolated;
exchanging heat between the first engine fluid conduit (214a) and the first buffer fluid conduit (220); and
exchanging heat between the second buffer fluid conduit (222) and the hydrogen conduit (208a).
the engine fluid is a first engine fluid, wherein the engine fluid conduit (214a) is a first engine fluid conduit (214a), and further comprising:
flowing a second engine fluid through a second engine fluid conduit (218a) of a third heat exchanger (218);
flowing the buffer fluid through a third buffer fluid conduit (236) in the third heat exchanger (218) and the second buffer fluid conduit (222) of the second heat exchanger (208); and
exchanging heat between the second engine fluid and the third buffer fluid conduit (236); or
the engine fluid is a first engine fluid, wherein the engine fluid conduit (214a) is a first engine fluid conduit (214a), and further comprising:
flowing a second engine fluid through a second engine fluid conduit (416a) of the first heat exchanger (414), wherein the second engine fluid conduit (416a), the first engine fluid conduit (214a), and the first buffer fluid conduit (220) are fluidly isolated; and
exchanging heat between the second engine fluid conduit (416a) and the first buffer fluid conduit (220).